2016
DOI: 10.1063/1.4954585
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Analysis of tumor populations and immune system interaction model

Abstract: Abstract.Immune system plays a vital role in controlling the tumor growth. Therefore, this paper proposes a new mathematical model that describes tumor-immune interaction, focusing on the role of natural killer (NK) cell and CD8 + T cell. The tumor population is subdivided into two different phases, namely interphase and mitosis. This model used Ordinary Differential Equations (ODEs) and the functions involved in the model represents tumor-immune growth, responses and interaction between the cells. The stabili… Show more

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Cited by 3 publications
(5 citation statements)
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References 21 publications
(40 reference statements)
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“…Then the system (1) is said to be stable if and only if the roots of its characteristic equation have negative real parts. The characteristic equation of system (1) with τ = 0 is Equation (17). All the roots of ( 17) have negative real part if (17) satisfies conditions a, b, c and d.…”
Section: Stability Results Of Tumour Equilibrium Point With Immune Re...mentioning
confidence: 99%
See 2 more Smart Citations
“…Then the system (1) is said to be stable if and only if the roots of its characteristic equation have negative real parts. The characteristic equation of system (1) with τ = 0 is Equation (17). All the roots of ( 17) have negative real part if (17) satisfies conditions a, b, c and d.…”
Section: Stability Results Of Tumour Equilibrium Point With Immune Re...mentioning
confidence: 99%
“…The characteristic equation of system (1) with τ = 0 is Equation (17). All the roots of ( 17) have negative real part if (17) satisfies conditions a, b, c and d.…”
Section: Stability Results Of Tumour Equilibrium Point With Immune Re...mentioning
confidence: 99%
See 1 more Smart Citation
“…The tool of mathematical modeling is widely used by researchers in the field of cancer modeling too. Several significant works [ 5 9 ] through mathematical modeling have been done to understand the response of the immune system with tumor. In [ 5 ], the authors analyzed a cancer model by considering the interactions between cancer cells, tumor angiogenesis and endothelial cells.…”
Section: Introductionmentioning
confidence: 99%
“…Arlotti et al [ 8 ] proposed a bilinear model of integro-differential equations to describe the dynamics of cellular interaction between tumor and immune cells. By introducing two phases, namely, the Inter-phase and M-phase at which cells are generally divided, Awang et al [ 9 ] newly described the interactions between tumor cells and immune system. Zeng and Ma [ 10 ] analyzed a deterministic tumor-immune model under the Allee effect.…”
Section: Introductionmentioning
confidence: 99%